JPS61230592A - Reproducing device - Google Patents

Reproducing device

Info

Publication number
JPS61230592A
JPS61230592A JP60070850A JP7085085A JPS61230592A JP S61230592 A JPS61230592 A JP S61230592A JP 60070850 A JP60070850 A JP 60070850A JP 7085085 A JP7085085 A JP 7085085A JP S61230592 A JPS61230592 A JP S61230592A
Authority
JP
Japan
Prior art keywords
color difference
signal
line
color
output
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP60070850A
Other languages
Japanese (ja)
Inventor
Yoshihiro Todaka
義弘 戸高
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hitachi Ltd
Original Assignee
Hitachi Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hitachi Ltd filed Critical Hitachi Ltd
Priority to JP60070850A priority Critical patent/JPS61230592A/en
Publication of JPS61230592A publication Critical patent/JPS61230592A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To reproduce a picture having high quality only with adding a simple process circuit by interpolating a color difference signal when hue fluctuation is occurred in a color difference line sequential color TV system and reducing a coloring with the color difference signal in which two lines are added at recording. CONSTITUTION:A luminance signal Y and an R color difference and a B color difference which are newly processed and lined up are outputted to terminals 103, 104 and 105. The color difference before 2 horizontal period is averaged with the delay lines (1HDL) 52 and 53 of 1 horizontal period and an adder 31. At a figure, the directions of electronic switches 41 and 42 when a Yn is arrived at the terminal 103 is shown and at (n) line of a lower figure, each signal when the Yn is arrived at the terminal 103 is shownly connecting with continuous lines. Thereby, it is possible to eliminate the complete dislocation of color because the signal of a previous line is used as it is on the line where a color fluctuation is occurred and to reduce the dislocation with obtaining an average color difference between a front and a rear.

Description

【発明の詳細な説明】 〔発明の利用分野〕 本発明は色差線順次方式に従って記録された色信号の再
生装置に係り、特に再生時の色信号再生に好適な信号処
理に関する。
DETAILED DESCRIPTION OF THE INVENTION [Field of Application of the Invention] The present invention relates to a reproduction device for color signals recorded according to the color difference line sequential method, and particularly to signal processing suitable for reproduction of color signals during reproduction.

〔発明の背景〕[Background of the invention]

電子カメラの磁気シート上への輝度および色信号の記録
方式はマビカにて行なわれた色差線順次記録方式である
CTEBS80−5  VR50−5)。
The method for recording luminance and color signals on the magnetic sheet of an electronic camera is the color difference line sequential recording method used by Mabica (CTEBS80-5 VR50-5).

同方式は輝度信号(以下Y信号と呼ぶ)は各水平走査ラ
イン毎に記録するが、色信号は色差信号形式、すなわち
赤色なR9青色なりとするとR−Y(R色差信号と以下
呼ぶ)及びB−Y(以下、B色差信号と呼ぶ)の2つの
色差信号を1ライン毎に交互KFM記録する、いわゆる
色差線順次記録方式を取っている。同時に記録時゛には
R色差信号とB色差信号の中心周波数をずらすことによ
り再生時に容易KR及びB色差信号を判別して生成でき
るようKしている。
In this method, the luminance signal (hereinafter referred to as the Y signal) is recorded for each horizontal scanning line, but the color signal is in the color difference signal format, that is, in the case of red R9 blue, R-Y (hereinafter referred to as the R color difference signal) and A so-called color difference line sequential recording method is adopted in which two color difference signals, B-Y (hereinafter referred to as B color difference signals), are alternately KFM recorded for each line. At the same time, during recording, the center frequencies of the R color difference signal and the B color difference signal are shifted so that the KR and B color difference signals can be easily distinguished and generated during reproduction.

第2図に走査線と記録される信号とを対比して示す模式
図を用い、色差線順次記録により、どのような信号がシ
ート上に記きこまれるかを以下説明する。同図の・・・
n−2,ルー1.s、r&+1・・・は走査ラインを示
す。r、R−Y、B−Yは各々輝度信号、R色差信号、
B色差信号を示す。色差線順次記録では例えば、オルラ
イン目でR色差を記録するとすると、シート上ではY信
号(ライン番号も入れてYn )とR−Y信号(同様K
 R,−Y、&信号)が記録される。分り易く説明する
ため同図では、例えば、R,−Y、は単K R3として
示し、かつルとYt、とR1を実線で連結して示す。ル
ナ1ラインではB色差信号であるので、ル+1とY、&
+1とJ、&+1を破線により連結して示す。ここで破
線は単に実線と区別して示すためである。このようにし
て同図によれば、各ラインに対してどのような信号が記
録されるかが直ちに読みとれる。
What kind of signals are written on a sheet by color difference line sequential printing will be explained below using a schematic diagram showing a comparison of scanning lines and recorded signals in FIG. In the same figure...
n-2, Lou 1. s, r&+1, . . . indicate scanning lines. r, RY, and B-Y are a luminance signal, an R color difference signal, and
B shows a color difference signal. In color difference line sequential recording, for example, if R color difference is to be recorded on all lines, on the sheet there will be a Y signal (including the line number, Yn) and a R-Y signal (similarly K
R, -Y, & signals) are recorded. For easy explanation, in the figure, for example, R and -Y are shown as a single K R3, and R, Yt, and R1 are shown connected by a solid line. Since the Luna 1 line is a B color difference signal, Lu+1 and Y, &
+1, J, &+1 are shown connected by broken lines. Here, the broken line is simply shown to distinguish it from the solid line. In this manner, according to the figure, it is possible to immediately read what kind of signal is recorded for each line.

第3図は第2図の記録信号を再生する場合の各ラインを
復調することにより再生される信号を示したものである
。n * 3+ 1 s ”’ a Y1s* Yn 
+ ’ *・・・* R3、R、+1.・・・、B%、
Bn+1.・・・ は第2図と同じ意味を表わす。す々
わちオルラインでは同時に再生されるR5色差と、1水
平周期の遅延線(1HDLと以下呼ぶ)を通過させた1
ライン前の信号B、−1色差とを用いてオルラインのY
信号と色信号を再生させる。このことをルとR1色差と
BT、−1色差を実線で連結して示す。同様にル+1ラ
イン上では、Yn+1.R,色差、Bn+1色差により
形成し、以下同じである。再生器の1例を第4図に示し
これを用いて、第3図の信号再生をさらに詳しく説明す
る。
FIG. 3 shows a signal reproduced by demodulating each line when reproducing the recorded signal of FIG. 2. n * 3 + 1 s ”' a Y1s * Yn
+ ' *...* R3, R, +1. ..., B%,
Bn+1. ... represents the same meaning as in Figure 2. In other words, in the all-line, R5 color difference is reproduced at the same time, and 1
Using the signal B before the line and the -1 color difference, the Y of the all line is
Regenerate signal and color signal. This is shown by connecting R, R1 color difference, BT, -1 color difference with a solid line. Similarly, on the Yn+1 line, Yn+1. It is formed by R, color difference, and Bn+1 color difference, and the same applies hereinafter. An example of the regenerator is shown in FIG. 4, and the signal regeneration shown in FIG. 3 will be explained in more detail using this example.

第4図において1は不図示の1M記録された磁気シート
から、輝度と色差線順次信号を復調する復調回路、10
1,102は端子であり、それぞれ輝度信号及び色差線
順次信号が出力される。41゜42は電子スイッチ、5
1は1水平周期間信号を遅延させる1#J)L、11は
2つの1M記録された色差信号の中心周波数が異なるこ
とにより、出方された一連の線順次信号のR色差又はB
色差を判別して切換信号を発生する整列信号発生回路、
103.104,105は端子であり、それぞれ本例で
はY、R,E信号が出力される。8は色信号処理回路で
ある。
In FIG. 4, 1 is a demodulation circuit that demodulates luminance and color difference line sequential signals from a 1M recorded magnetic sheet (not shown);
1 and 102 are terminals from which a luminance signal and a color difference line sequential signal are output, respectively. 41°42 is an electronic switch, 5
1 delays the signal for one horizontal period 1#J)L, 11 indicates the R color difference or B of a series of line sequential signals output due to the difference in the center frequencies of the two 1M recorded color difference signals.
An alignment signal generation circuit that detects color differences and generates switching signals;
Terminals 103, 104, and 105 output Y, R, and E signals, respectively, in this example. 8 is a color signal processing circuit.

今、走査線のか、1%+1.n+2.・・・ ラインに
従い、端子101にY信号がYl、YB+1.Ya+2
91.。
Now, the scanning line is 1% + 1. n+2. ... According to the line, the Y signal is applied to the terminal 101 as Yl, YB+1 . Ya+2
91. .

端子102に色差信号がR3−Y1%、Bn+1−Yr
、+1゜Rr&+2  Yrb+2.−  と出力され
るとする。オルラインが出力される場合の整列信号発生
回路11の出力による電子スイッチ41.42の切換は
同図に示す向きとなる。この場合I HDL 51よす
端子103.104,105上にはそれぞれY、、R,
−Yn。
Terminal 102 has color difference signals R3-Y1%, Bn+1-Yr
, +1°Rr&+2 Yrb+2. − is output. When the all-line is output, the electronic switches 41 and 42 are switched in the direction shown in the figure by the output of the alignment signal generating circuit 11. In this case, Y, , R,
-Yn.

B+5−IYn−1が出力されることが直ちに理解され
る。同様にルナ1ラインではY、+1.R,−YnBr
、+1 1’n+1  が出力される。このようにして
第3図の信号列が生成されることが分る。
It is immediately understood that B+5-IYn-1 is output. Similarly, on the Luna 1 line, Y, +1. R, -YnBr
, +1 1'n+1 are output. It can be seen that the signal sequence shown in FIG. 3 is generated in this way.

しかし第3図でも分るよ5に色差線順次記録では、R及
びBは1ラインおきKしか信号がこないため、垂直方法
の解像度が半分となり、Yの半分の垂直方向の空間周波
数においてモワレが発生する。これは各ライン上に色信
号があるにもかかわらず色差線順次記録フォーマットに
従わざるをえないため、Yより低域でモワレが新たに発
生するようになったものである。これを低減する1方法
としてR及びBの垂直方向のMTFを回路的に低下させ
て、モワレな低減させる方法が考えられる。すなわち、
オルラインと氷ル+1ライン、オル+1ラインとオル+
2ライン・・・の色差信号を足し合わせて等価的に垂直
方向の開口率を上げることによりMTFを低下させよう
とするものである。
However, as can be seen in Figure 3, in color-difference line sequential recording, only K signals are received every other line for R and B, so the resolution of the vertical method is halved, and moire occurs at a spatial frequency in the vertical direction that is half that of Y. Occur. This is because although there is a color signal on each line, the color difference line sequential recording format has to be followed, so moire newly occurs in frequencies lower than Y. One possible method for reducing this is to reduce the vertical MTF of R and B using a circuit to reduce moiré. That is,
Or line and ice le +1 line, or line +1 line and oru +
This is intended to reduce the MTF by adding together the color difference signals of two lines and equivalently increasing the aperture ratio in the vertical direction.

このときの信号の例を第5図に示す。同図において、第
2図の色差に対応してオルライン上ではYlとR,−1
+R,の色差(すなわちR1−4+Rn−Yn −1−
Yn ) *オル+1ライン上では、YrL+1とBn
十B、+1の色差、・・・と記録される。
An example of the signal at this time is shown in FIG. In the same figure, corresponding to the color difference in Figure 2, Yl and R, -1 on the or line
+R, color difference (i.e. R1-4+Rn-Yn -1-
Yn) *On the Or+1 line, YrL+1 and Bn
It is recorded as 10B, +1 color difference, and so on.

このときR色差及びB色差成分は、2ライン分の垂直方
向の開口径を持つので、第2図の1ライン分の開口径よ
りも、2ライン周期におけるMTFが下ることが分る。
At this time, since the R color difference and B color difference components have vertical aperture diameters for two lines, it can be seen that the MTF in the two line period is lower than the aperture diameter for one line in FIG.

このことは同時にモワレに対する感度も下ることであり
、モワレの発生を低減できることが理解される。
It is understood that this also lowers the sensitivity to moire, and that the occurrence of moire can be reduced.

この信号形式を得るための記録時の処理回路例を第6図
に示す。同図において、5は撮像部6はカメラ回路、6
01,602.603は端子であり、それぞれカメラ回
路6よりY、R色差、B色差信号が出力される端子であ
る。51.52はjHDL 、 32゜33は足し算器
、301.302は端子、7はY、R色差、B色差信号
から色差線順次信号形式の信号形式に変換してシートに
記録する記録回路である。
FIG. 6 shows an example of a processing circuit during recording to obtain this signal format. In the same figure, reference numeral 5 indicates an imaging unit 6 which is a camera circuit;
01, 602, and 603 are terminals to which Y, R color difference, and B color difference signals are output from the camera circuit 6, respectively. 51 and 52 are jHDL, 32 and 33 are adders, 301 and 302 are terminals, and 7 is a recording circuit that converts the Y, R color difference, and B color difference signals into a color difference line sequential signal format and records it on a sheet. .

同図において、牙ト、s+1.a+2・・・ラインに対
して端子602上にはR,&−Y、 、 R,−1−Y
、 1・・・が出力され、IHI)L51の通過前と後
の信号を加算器32によって加算することにより、R1
−1+RB  Yf&−+  Yn、Rf&+1+Rf
&+2−Yn+1−Yn+2.・・・が出力される。同
様に端子602上にはB @ −、+ B g −Y 
3−1− Yル・曲・・・・が出力されるこの端子60
1と602の信号を交互に輝度信号と共に色差形式で記
録することKよって第5図の形式で信号がシート上に記
き込まれる。当然ではあるが1HDL 51,52がな
ければ第2図の形式と同一となる。またここで足し算器
32.55によりR及びB信号振幅は2倍となるが牙2
図の形式のレベルと合わせるために1/2倍の増幅器を
端子301.302の後に入れることは明白であるので
図示していない。
In the same figure, tusk, s+1. R, &-Y, , R,-1-Y on the terminal 602 for the a+2... line
, 1... are output, and by adding the signals before and after passing through IHI) L51 by the adder 32, R1
-1+RB Yf&-+ Yn, Rf&+1+Rf
&+2-Yn+1-Yn+2. ... is output. Similarly, on the terminal 602, B @ -, + B g -Y
3-1- This terminal 60 outputs Yle, song, etc.
By recording the signals 1 and 602 alternately together with the luminance signal in a color difference format, the signals are written on the sheet in the format shown in FIG. Of course, if 1HDL 51 and 52 were not present, the format would be the same as that shown in FIG. Also, here, the R and B signal amplitudes are doubled by the adder 32.55, but the amplitude of the R and B signals is doubled.
It is obvious that a 1/2 amplifier should be inserted after the terminals 301 and 302 to match the levels in the illustrated format, and is therefore not shown.

この記録された信号を第4図化工す再生器を通して再生
すれば、第3図と同様に、牙7図に示すような信号が再
生される。すなわち、第1゜@ + 1 @ a + 
2 *・・・ラインにおいて、YとRとB信号はそれぞ
れ、Y、とR,−1+Rnの色差とB、−z +B、−
1の色差*ys+1とR,S−t+RSの色差とB n
 + E s + 1 の色差、・・・・・・・・・ 
のように再生される。この信号自体としては色モワレの
低減された高画質の信号であるが、モニタ等で色を再生
する場合忙同−ラインの番号の色信号が片方ないので垂
直方向に急激に絵が変った場合(例えば水平のエツジ部
分)、全く異なる色が付く可能性がある。
If this recorded signal is reproduced through the regenerator shown in FIG. 4, a signal as shown in FIG. 7 will be reproduced, similar to FIG. 3. That is, the 1st ° @ + 1 @ a +
2 *... In the line, the Y, R, and B signals are the color difference of Y, R, -1+Rn, and B, -z +B, -, respectively.
Color difference of 1*ys+1 and color difference of R, S-t+RS and B n
+ E s + 1 color difference,...
is played like this. This signal itself is a high-quality signal with reduced color moire, but when the color is reproduced on a monitor, etc., the color signal for the line number is missing on one side, so the picture changes suddenly in the vertical direction. (e.g. horizontal edges) may have completely different colors.

例えばオルラインではY、とRn−++Rn色差とB、
−2+E、−1色差の信号がモニタ上で出力されるが、
同一ライン上に対応する信号がないことにより全く異な
った色がつくことがある。
For example, in the Or line, Y, and Rn-++Rn color difference and B,
-2+E, -1 color difference signals are output on the monitor,
The absence of corresponding signals on the same line may result in completely different colors.

〔発明の目的〕[Purpose of the invention]

本発明の目的は、色差線順次特有の水平エツジ部に被写
体色と異なる色が付くことを低減した信号処理回路を有
する電子カメラ用として好適な再生装置を提供すること
にある。
SUMMARY OF THE INVENTION An object of the present invention is to provide a playback device suitable for use in an electronic camera, which has a signal processing circuit that reduces the appearance of a color different from the object color on a horizontal edge portion peculiar to color difference line sequential.

〔発明の概要〕[Summary of the invention]

色差信号で色を再生するので、輝度変化だけの場合は色
がつかない。しかし色相変化がある場合が問題であるの
で1色差信号を補間することによって、記録時に2ライ
ン足し合わせた色差信号でより色づきを軽減する。すな
わち、再生中のラインにない色差はその前後の色差の平
均をとって、そのラインの色差とする方法である。
Since colors are reproduced using color difference signals, no color appears if there is only a change in brightness. However, since there is a problem when there is a hue change, by interpolating one color difference signal, the color difference can be further reduced with the color difference signal obtained by adding two lines together during recording. That is, for a color difference that does not exist in the line that is being reproduced, the average of the color differences before and after it is taken as the color difference for that line.

〔発明の実施例〕[Embodiments of the invention]

以下、本発明の一実施例を第1図に示す。同図中のブロ
ック及び端子において第4図と同一番号のブロック及び
端子は第4図中のそれと同一機能を有するブロック及び
端子である。    □例えば、第1図中の端子103
,104,105は第4図の端子103,104,10
5と同一信号が出力される端子であり、Yと新しく処理
整列されたR色差B色差がそれぞれ出力される。すなわ
ちY、、とRn−1+R,の色差とEF&−z+E、−
tの色差。
An embodiment of the present invention is shown in FIG. 1 below. Blocks and terminals in the figure having the same numbers as those in FIG. 4 are blocks and terminals having the same functions as those in FIG. 4. □For example, terminal 103 in Figure 1
, 104, 105 are the terminals 103, 104, 10 in FIG.
This is a terminal to which the same signal as 5 is output, and Y, R color difference and B color difference newly processed and arranged are output respectively. That is, the color difference between Y, , and Rn-1+R, and EF&-z+E,-
t color difference.

・・・・・・・・・・・・であり、第4図と全く同一出
力である、第1図中の51.52.53はIHDL、5
1は足し算器である。
......, and the output is exactly the same as in Fig. 4. 51.52.53 in Fig. 1 is IHDL, 5
1 is an adder.

第1図から直ちに分るように、  1HDL 52,5
5と足し算器31とKより、2水平周期前の色差が平均
されている。
As can be readily seen from Figure 1, 1HDL 52,5
5, the adder 31, and K, the color differences two horizontal periods ago are averaged.

このブロック図の動作を第8図の模式図を用いて説明す
る。第1図では端子103 K F、が来た場合の電子
スイッチ41.42の向きを示し、第8図のルラインで
は、第1図のY、が端子103IC達した場合の各信号
を実線により連結して示す。
The operation of this block diagram will be explained using the schematic diagram of FIG. Figure 1 shows the direction of the electronic switches 41 and 42 when terminal 103K F arrives, and the line in Figure 8 connects each signal using a solid line when Y in Figure 1 arrives at terminal 103IC. and show.

すなわち、YはY、、1色差はRa+ 1”Rsの色差
、B色差はB、−2+B、&−1色差とB+s+Ja+
1色差の平均を取ることを示す。YがY、+1となった
場合も同様であるが、実線と区別するため破線により連
結して示す。
That is, Y is Y, 1 color difference is Ra+ 1"Rs color difference, B color difference is B, -2+B, &-1 color difference and B+s+Ja+
Indicates that the average of one color difference is taken. The same applies to the case where Y becomes Y, +1, but they are shown connected by broken lines to distinguish them from solid lines.

このようKすることにより1色の変化が起ったライン上
で、その前のラインの信号をそのまま使用するための色
の完全なずれをなくシ1前後の平均色差を取ることkよ
りずれを軽減することができる。
By using K in this way, on a line where a change in one color has occurred, the signal of the previous line can be used as is, thereby eliminating a complete color shift, and by taking the average color difference before and after 1. It can be reduced.

この効果を第9図に示す。同図において、色はオルライ
ンまでシアン(G + B ) 、 、t+%+1り再
現している。
This effect is shown in FIG. In the figure, the colors are reproduced as cyan (G + B), , t+%+1 up to the entire line.

ただしYは、r −0,6G+ 0.5B+ 0.1J
とした。
However, Y is r -0,6G+ 0.5B+ 0.1J
And so.

同図中R,G、Bは色差+輝度により原色信号を取り出
した値である。
In the figure, R, G, and B are values obtained by extracting primary color signals using color difference + luminance.

0内は従来の方法で色再現した場合を示す。Values within 0 indicate the case where colors are reproduced using the conventional method.

同図より直ちに分るように色つきの強度が1/2となり
改善されていることが分る。
As can be readily seen from the figure, the colored intensity is reduced to 1/2, which is an improvement.

〔発明の効果〕〔Effect of the invention〕

本発明によれば、従来の色差線順次再生回路11C1H
DLの遅延回路の取りつけやレベル合わせ等の簡単な処
理回路を加えるだけで、線順次方式に特有の水平エツジ
部の色つきを軽減できるので、高画質な画像を再生でき
る効果がある。
According to the present invention, the conventional color difference line sequential reproduction circuit 11C1H
By simply adding a simple processing circuit such as installing a DL delay circuit and level matching, it is possible to reduce the coloring of horizontal edges that is characteristic of the line sequential method, which has the effect of allowing high-quality images to be reproduced.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の一実施例を示すブロック図第2図は色
差線順次記録方式によって記録される各ライン毎のY、
R,B信号例の模式図、第3図は第2図の記録信号を再
生する場合の各ライン毎の再生信号を示す模式図、第4
図は一般的な1つの色差線順次再生回路例を示すブロッ
ク図第5図はモワレを低減した各ライン毎のY、R0B
信号記碌形式を示した模式図、第6図は同形式で記録す
るための1回路例を示したブロック図、オフ図は第5図
の信号形式で記録し再生した各ライン毎のY、R,Hの
再生信号を示す模式図、第8図は第1図を説明するため
の模式図、第9図は実施例の効果を示すための模式図で
ある。
FIG. 1 is a block diagram showing an embodiment of the present invention. FIG. 2 shows the Y,
Fig. 3 is a schematic diagram of an example of R and B signals, and Fig. 3 is a schematic diagram showing a reproduction signal for each line when reproducing the recorded signal of Fig. 2.
The figure is a block diagram showing an example of a general color difference line sequential reproduction circuit.
A schematic diagram showing the signal recording format, Figure 6 is a block diagram showing an example of a circuit for recording in the same format, and an off-line diagram shows the Y of each line recorded and reproduced in the signal format shown in Figure 5. FIG. 8 is a schematic diagram showing the R and H reproduction signals, FIG. 8 is a schematic diagram for explaining FIG. 1, and FIG. 9 is a schematic diagram for showing the effect of the embodiment.

Claims (1)

【特許請求の範囲】 1)色差線順次方式に従って記録された輝度信号Yと色
差信号(R−Y)および(B−Y)を再生して輝度信号
Yから成る第1の出力、および色差信号(R−Y)と(
B−Y)の交互順次出力から成る第2の出力として出力
する復調回路と、前記第2の出力を入力され、交互順次
に現われる色差信号(R−Y)と (B−Y)の何れか一方を遅延させることにより、両色
差信号を並行出力として出力する直並列変換回路と、前
記復調回路からの第1の出力としての輝度信号Yと前記
直並列変換回路からの並行出力としての色差信号(R−
Y)および(B−Y)を入力されて処理する色信号処理
回路と、から成る再生装置において、 前記直並列変換回路から並行出力として出 力される色差信号(R−Y)と(B−Y)の何れか一方
を、当該色差信号の2水平周期母に現われる出力の隣り
合った二つを用いて作成された補間信号として出力する
ための補間回路を前記直並列変換回路に設けたことを特
徴とする再生装置。
[Claims] 1) A first output consisting of the luminance signal Y and the color difference signal by reproducing the luminance signal Y and the color difference signals (RY) and (B-Y) recorded according to the color difference line sequential method. (RY) and (
a demodulation circuit that outputs as a second output consisting of alternating sequential outputs of B-Y), and a color difference signal (R-Y) or (B-Y) that is inputted with the second output and appears alternately and sequentially. a serial-to-parallel conversion circuit that outputs both color difference signals as parallel outputs by delaying one of them, a luminance signal Y as a first output from the demodulation circuit, and a color difference signal as parallel output from the serial-to-parallel conversion circuit; (R-
a color signal processing circuit which inputs and processes color difference signals (R-Y) and (B-Y), which are output as parallel outputs from the serial-to-parallel conversion circuit; ), the serial-to-parallel conversion circuit is provided with an interpolation circuit for outputting either one of them as an interpolation signal created using two adjacent outputs appearing in the mother of two horizontal periods of the color difference signal. Characteristic playback device.
JP60070850A 1985-04-05 1985-04-05 Reproducing device Pending JPS61230592A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP60070850A JPS61230592A (en) 1985-04-05 1985-04-05 Reproducing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP60070850A JPS61230592A (en) 1985-04-05 1985-04-05 Reproducing device

Publications (1)

Publication Number Publication Date
JPS61230592A true JPS61230592A (en) 1986-10-14

Family

ID=13443452

Family Applications (1)

Application Number Title Priority Date Filing Date
JP60070850A Pending JPS61230592A (en) 1985-04-05 1985-04-05 Reproducing device

Country Status (1)

Country Link
JP (1) JPS61230592A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6102520A (en) * 1990-04-20 2000-08-15 Canon Kabushiki Kaisha Recording apparatus with ink spot volume regulation

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6102520A (en) * 1990-04-20 2000-08-15 Canon Kabushiki Kaisha Recording apparatus with ink spot volume regulation

Similar Documents

Publication Publication Date Title
JPH0223077B2 (en)
JPS61230592A (en) Reproducing device
JPH06101855B2 (en) Video signal converter
JPS6118289A (en) Reproducing device
JP2569735B2 (en) Standard method conversion method
JP2002185980A (en) Multi-format recording and reproducing device
JPS60212092A (en) Reproducer of picture information
JP3052582B2 (en) Luminance signal / color signal separation circuit and television receiver or video signal recording / reproducing device
JP2897407B2 (en) Video signal processing circuit
JPH02100494A (en) Regenerative device for fm modulated video signal
JP2587142B2 (en) Video signal recording and playback device
JPH0354980A (en) Wide aspect image signal receiver
JPS60246195A (en) Recording and reproducing system of line sequential video signal
JP3017873B2 (en) Black and white video signal output device
JPH06153215A (en) Video signal transmission method and video signal transmitter
JPS5991784A (en) Color picture display device
JPH0748868B2 (en) Printer device
JPH0496595A (en) Video signal processing circuit
JPH051674B2 (en)
JPH02288577A (en) Frequency converter circuit
JPH07184095A (en) Video camera
JPS62169595A (en) Picture reproducing device
JPH03255798A (en) Picture recording and reproducing device
JPH0738728B2 (en) Video signal playback device
JPS61203792A (en) Video signal processing device